Pieper R O, Futscher B W, Dong Q, Erickson L C
Department of Medicine, Stritch School of Medicine, Loyola University Medical Center, Maywood, Illinois 60153.
Cancer Res. 1991 Mar 15;51(6):1581-5.
Treatment of chloroethylnitrosourea-resistant cells with streptozotocin (STZ) prior to bis-chloroethylnitrosourea (BCNU) exposure has been shown to result in a depletion of O6-methylguanine DNA methyltransferase (MGMT) activity, increased BCNU-induced interstrand cross-linking, and a 2-3 log enhancement of BCNU cytotoxicity in vitro. The current study was undertaken to define the kinetics of repletion of MGMT activity following the STZ/BCNU combination and to assess at the molecular level the effects of the combination on MGMT mRNA expression. Results demonstrate that MGMT activity can be depleted by greater than 90% relative to untreated controls using an optimized STZ/BCNU combination regimen and that greater than 50% depletion can be maintained for at least 24 h. This depletion appears to be independent of effects at the mRNA level because neither STZ alone nor the STZ/BCNU combination significantly altered steady state levels of MGMT mRNA. Cytotoxicity studies are consistent with MGMT repletion data and demonstrate that, as the interval between STZ and BCNU exposures increases, the degree of enhanced cytotoxicity induced by the combination relative to BCNU alone decreases. These results suggest that the enhanced cytotoxicity induced by the STZ/BCNU combination over BCNU treatment alone is favored by both the lack of induction of expression of MGMT mRNA and by slow reappearance of MGMT activity.
在双氯乙基亚硝脲(BCNU)暴露之前,先用链脲佐菌素(STZ)处理耐氯乙基亚硝脲的细胞,结果显示可导致O6-甲基鸟嘌呤DNA甲基转移酶(MGMT)活性降低、BCNU诱导的链间交联增加,并且在体外使BCNU的细胞毒性增强2 - 3个对数级。本研究旨在确定STZ/BCNU联合处理后MGMT活性恢复的动力学,并在分子水平评估该联合处理对MGMT mRNA表达的影响。结果表明,使用优化的STZ/BCNU联合方案,相对于未处理的对照,MGMT活性可降低90%以上,且50%以上的降低可维持至少24小时。这种降低似乎与mRNA水平的影响无关,因为单独使用STZ或STZ/BCNU联合处理均未显著改变MGMT mRNA的稳态水平。细胞毒性研究与MGMT恢复数据一致,表明随着STZ和BCNU暴露间隔时间的增加,联合处理相对于单独使用BCNU诱导的细胞毒性增强程度降低。这些结果表明,STZ/BCNU联合处理相对于单独使用BCNU诱导的增强细胞毒性,既得益于MGMT mRNA表达未被诱导以及MGMT活性缓慢再现。